Mycobacterium Tuberculosis

Mycobacterium tuberculosis is the slow-growing bacterium that causes tuberculosis, a major infectious disease whose persistence reflects a complex interaction between microbial survival and host immunity. After inhalation, the bacillus reaches alveolar macrophages, where its lipid-rich, mycolic acid-containing cell envelope helps resist killing and supports survival within host cells; immune signaling then recruits leukocytes to form granulomas that contain, but may not eliminate, infection. Understanding this host-pathogen interaction is central to immunology and infection research, including studies of latent and active disease, diagnostic biomarkers, antimicrobial therapy, and vaccine responses. Research on M. tuberculosis also informs strategies to limit transmission and overcome drug resistance.

Mycobacterium Tuberculosis - Related Videos

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JoVE Journal - Immunology and Infection

Growth of Mycobacterium tuberculosis Biofilms

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2012

Mycobacterium tuberculosis forms drug tolerant biofilms when cultured in certain conditions. Here we describe methods for culturing M. tuberculosis biofilms and determining the frequency of drug tolerant persisters. These protocols will be useful for further studies into the mechanisms of drug tolerance in M. tuberculosis.

Aerosol Delivery of Mycobacterium tuberculosis for Pulmonary Infection in a Mouse Model

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2026

Source: Mueller, A., et al. An Experimental Model to Study Tuberculosis-Malaria Coinfection upon Natural Transmission of Mycobacterium tuberculosis and Plasmodium berghei. J. Vis. Exp. (2014)This video demonstrates the aerosol delivery of Mycobacterium tuberculosis (Mtb) to mice using a nebulizer-based chamber system to induce pulmonary infection, providing a controlled and reproducible model for studying airborne tuberculosis transmission and host-pathogen interactions in vivo.

Isolation of Siderophore-Containing Extracellular Vesicles from Mycobacterium tuberculosis

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2025

Source: Gupta, S., Marcela Rodriguez, G. Isolation and Characterization of Extracellular Vesicles Produced by Iron-limited Mycobacteria. J. Vis. Exp. (2019)This video demonstrates the stepwise isolation of extracellular vesicles (EVs) from Mycobacterium tuberculosis cultured under iron-limiting conditions that mimic the host environment. It outlines the use of ultrafiltration, differential centrifugation, and density gradient separation to enrich and identify EV-containing fractions.

Separation and Fractionation of Cell Wall and Cell Membrane Proteins from Mycobacterium tuberculosis for Downstream Protein Analysis

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2025

This protocol separates insoluble cell wall and membrane proteins into simple fractions (1-5 proteins) using preparative isoelectric focusing (IEF) based on isoelectric point, followed by separation by molecular weight. The resulting fractions can be used directly for immunological and proteomic analysis without further purification.

Assessing Cell Layer Permeability in Non-Replicating Persistent Mycobacterium tuberculosis

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2026

Begin with tubes containing the non-replicating persistent, or NRP stage of Mycobacterium tuberculosis, which has a thickened outer layer.Add glass beads to one tube and shake it to mechanically disrupt the mycobacteria’s outer layer, enhancing permeability. Next, transfer the bead-beaten mycobacterial suspension to a fresh tube.Add fluorescently-labeled rifampicin, an anti-tuberculosis antibiotic, to both the untreated and bead-beaten cell suspensions.Incubate with shaking to allow...

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